Contrary to other proposed approaches, the present work aims at defining an energy management strategy that is able to cope with the main issues of MGs equipped with ESS, i.e., ESS degradation and unexpected outages of the main grid, which can be appreciated only considering long time horizons.
It keeps a high average SoC, but it tends to charge the ESS when an excess of generated energy occurs and discharges it also when the main utility grid is available in order to reduce the amount of electricity purchased from the grid. Table 7. Average performance of the considered policies over 25 test episodes in experiment 1). Fig. 7.
The effects of adopting different operational strategies on Lithium-ion batteries have been investigated in , which shows that properly managing the SoC of the ESS can help achieving long lifetimes and highlights the need of jointly managing the MG operation and the ESS maintenance.
During maintenance, the battery cannot be charged or discharged. The time of occurrence of the main utility grid outage, T out, is sampled from an exponential distribution with rate λ grid = 5.71 ∙ 10 − 5 hour s − 1, which has been set according to .
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